Identification of the impact of electric pulse action on the disintegration of a natural mineral

Q3 Mathematics
Ayanbergen Khassenov, G. Bulkairova, Dana Karabekova, M. Bolatbekova, G.K., Alpyssova, Arystan Kudussov, Perizat Kissabekova
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引用次数: 0

Abstract

The work is devoted to the study of the electric pulse disintegration of a natural mineral. The object of the study is the natural mineral quartzite of the Aktas deposit of the Republic of Kazakhstan. For the destruction and grinding of quartzite, a working cell of an electric pulse unit was developed. Electric pulse crushing is a modern technique for grinding a variety of materials, which provides the desired degree of grinding with a certain granulometric composition of the product and has a high ability of selective crushing. With the help of this technology, quartzite grinding was carried out with an increase in the capacity of capacitor banks from 0.25 mF to 1 mF, the pulse discharge voltage changed from 20 kV to 30 kV, the number of pulse discharges from 500 to 1,000, the inner diameter of the working cell from 60 mm to 80 mm. The results of the disintegration of a natural mineral by the electric pulse method allowed us to determine the degree of grinding of the finished product. The obtained results can be used in the study and optimization of the extraction of natural minerals, which is important for ensuring the sustainable use of natural resources and balanced economic development. Crushed quartzite is used in various industries, including the production of optical fibers, electronics and photovoltaic devices. A material with a particle diameter of 0.1 to 0.4 millimeters is used to create glass, ceramic and porcelain products, as well as insulation materials. Due to its homogeneous composition containing up to 98 % silicon oxide (SiO2) and excellent absorbent properties, quartz sand is also used as a filter material for water purification
确定电脉冲作用对天然矿物崩解的影响
这项工作致力于研究天然矿物的电脉冲分解。研究对象是哈萨克斯坦共和国阿克塔斯矿床的天然矿物石英岩。为了破坏和研磨石英岩,开发了电脉冲装置的工作单元。电脉冲粉碎是一种用于粉碎各种材料的现代技术,可在产品具有一定粒度组成的情况下提供所需的粉碎程度,并具有很强的选择性粉碎能力。在该技术的帮助下,进行了石英岩研磨,电容器组的容量从 0.25 mF 增加到 1 mF,脉冲放电电压从 20 kV 变为 30 kV,脉冲放电次数从 500 次变为 1 000 次,工作池内径从 60 毫米变为 80 毫米。通过电脉冲法分解天然矿物的结果,我们可以确定成品的研磨程度。所获得的结果可用于研究和优化天然矿物的提取,这对于确保自然资源的可持续利用和经济的均衡发展非常重要。碎石英岩可用于各种行业,包括光纤、电子和光伏设备的生产。颗粒直径为 0.1 至 0.4 毫米的材料可用于制造玻璃、陶瓷和瓷器产品以及绝缘材料。由于石英砂成分均匀,含有高达 98% 的氧化硅(SiO2),且具有出色的吸附性,因此还可用作净水过滤材料。
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来源期刊
Eastern-European Journal of Enterprise Technologies
Eastern-European Journal of Enterprise Technologies Mathematics-Applied Mathematics
CiteScore
2.00
自引率
0.00%
发文量
369
审稿时长
6 weeks
期刊介绍: Terminology used in the title of the "East European Journal of Enterprise Technologies" - "enterprise technologies" should be read as "industrial technologies". "Eastern-European Journal of Enterprise Technologies" publishes all those best ideas from the science, which can be introduced in the industry. Since, obtaining the high-quality, competitive industrial products is based on introducing high technologies from various independent spheres of scientific researches, but united by a common end result - a finished high-technology product. Among these scientific spheres, there are engineering, power engineering and energy saving, technologies of inorganic and organic substances and materials science, information technologies and control systems. Publishing scientific papers in these directions are the main development "vectors" of the "Eastern-European Journal of Enterprise Technologies". Since, these are those directions of scientific researches, the results of which can be directly used in modern industrial production: space and aircraft industry, instrument-making industry, mechanical engineering, power engineering, chemical industry and metallurgy.
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